Dispatching Strategy of Joint Wind, Photovoltaic, Thermal and Energy Storage Considering Utilization Ratio of New Energy

De Gejirifu, Lian Fuqiang, Tian Xueqin, Zhang Jing, G. Yujie, Liang Wenxuan, Wang Xinlei, L. Mingliang, Xubo Tong, Ji Jie
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引用次数: 2

Abstract

Large-scale wind power and photovoltaic combined with thermal power, energy storage and other equipment need to be send out, resulting in the increase in the cost of joint dispatching system and the obstruction of new energy consumption. In order to realize the economic efficiency of the combined dispatching of wind power and photovoltaic, thermal power and energy storage, this paper designs the operation framework of the combined dispatching of joint wind, photovoltaic, thermal and energy storage, aiming at the lowest comprehensive operation cost and the largest amount of new energy consumption. The paper establishes the dispatching model and selects the DC transmission channel from Xinjiang to Shandong for multi scenario analysis. By improving the flexibility of thermal power transformation technology, the comprehensive operation cost of the outgoing system was significantly reduced by 6.93%, and the energy abandonment rate was reduced by 9.30%. Under the dynamic adjustment of wind power and photovoltaic installed capacity, the utilization rate of new energy has a weak positive correlation with the increase of comprehensive operation cost.
考虑新能源利用率的风、光、热、储联合调度策略
大规模风电、光伏联产火电、储能等设备需要送出,造成联合调度系统成本增加,阻碍新能源消纳。为实现风电与光伏、火电、储能联合调度的经济效益,本文以综合运行成本最低、新增能源消纳量最大为目标,设计了风电、光伏、热电、储能联合调度的运行框架。建立了调度模型,选取了新疆至山东直流输电通道进行多场景分析。通过提高火电变电技术的灵活性,出电系统综合运行成本显著降低6.93%,弃能率显著降低9.30%。在风电和光伏装机动态调整下,新能源利用率与综合运行成本的增加呈弱正相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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